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Experimental investigation of hypervelocity plasma jets generated with a coaxial arc device

机译:同轴电弧装置产生的超高速等离子体射流的实验研究

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A new coaxial plasma generator has been developed. It provides hypervelocity plasma pulses for aerosol formation purposes. Plasma ignition and acceleration inside the plasma generator strongly determine subsequent particle formation and growth processes and are therefore intended to be studied within the frame of this work. The first part of the paper describes the experimental set-up. Special emphasis is drawn to the plasma generator which basically consists of a coaxial electrode assembly with two high pressure gas injections to supply different reactive and/or inert gases. The plasma is initiated and sustained by the surge current of a capacitor bank (60 /spl mu/F with charging voltage up to 15 kV). The discharge characteristics (typical several 10 kA) can be modified by a pulse forming variable inductance and by the settings of the gas injection (e.g. type of gas, pressure of gas, trigger delay). The second part of the paper deals with the experimental investigation of the plasma jet itself. Since plasma ignition and acceleration inside the electrode assembly initiate the whole process chain-including particle formation-special focus is laid on measuring plasma parameters. Standard electrical measurements of current and arc voltage are performed to investigate the energy coupling. Short time photography provides information on arc generation and on acceleration of the jet. Optical emission spectroscopy is carried out to gain information on the composition on the plasma. It permits to derive a first estimation of plasma temperature and of electron density.
机译:开发了一种新的同轴等离子体发生器。它为气溶胶形成目的提供超细血管脉冲。等离子体发电机内的等离子体点火和加速度强烈地确定随后的颗粒形成和生长过程,因此打算在这项工作的框架内进行研究。本文的第一部分描述了实验设置。特别强调到等离子体发生器,基本上由具有两个高压气体喷射的同轴电电极组件组成,以供应不同的反应性和/或惰性气体。通过电容器组的浪涌电流(60 / SPL MU / F,充电电压高达15kV)启动并维持等离子体。通过脉冲形成可变电感和气体喷射的设置可以修改排出特性(典型的几个10ka)(例如,气体类型,气体压力,触发延迟)。本文的第二部分涉及等离子体喷射本身的实验研究。由于电极组件内的等离子体点火和加速度启动整个过程链 - 包括颗粒形成 - 特别焦点被铺设在测量等离子体参数上。执行电流和电弧电压的标准电测量以研究能量耦合。短时间摄影提供有关弧度的信息和喷射的加速度。进行光学发射光谱,以获得对等离子体上的组合物的信息。它允许推导出等离子体温度和电子密度的第一估计。

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